CN102117346A - Key element input method - Google Patents

Key element input method Download PDF

Info

Publication number
CN102117346A
CN102117346A CN2009102477739A CN200910247773A CN102117346A CN 102117346 A CN102117346 A CN 102117346A CN 2009102477739 A CN2009102477739 A CN 2009102477739A CN 200910247773 A CN200910247773 A CN 200910247773A CN 102117346 A CN102117346 A CN 102117346A
Authority
CN
China
Prior art keywords
key element
key
input method
key elements
input
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN2009102477739A
Other languages
Chinese (zh)
Inventor
王长清
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHANGHAI MOKE HIGH-TECH DEVELOPMENT CO LTD
Original Assignee
SHANGHAI MOKE HIGH-TECH DEVELOPMENT CO LTD
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by SHANGHAI MOKE HIGH-TECH DEVELOPMENT CO LTD filed Critical SHANGHAI MOKE HIGH-TECH DEVELOPMENT CO LTD
Priority to CN2009102477739A priority Critical patent/CN102117346A/en
Publication of CN102117346A publication Critical patent/CN102117346A/en
Pending legal-status Critical Current

Links

Images

Landscapes

  • Input From Keyboards Or The Like (AREA)

Abstract

The invention discloses a key element input method comprising the following steps of extracting the key elements of a drawing and conducting classification and sizing on the key elements; defining various key elements, showing the parameter values of the key elements definitely, and then constructing a virtual entity ; determining the input method of the key elements; inputting the date in a specific data base for storing; and combining the password method of the dynamic data base and the code position rule of the key elements for comprehensive data processing. The geometric figure and relative processing information are transmitted to a computer in a simpler method for enabling the computer to know the processing requirements, and the sorting and calculation of the information are used for providing a basis for the subsequent generation, and the method is fast in speed and convenient in use.

Description

The key element input method
Technical field
The present invention relates to a kind of input method of detail drawing machining information, particularly relate to a kind of key element input method.
Background technology
Geometric input is a gordian technique in the computer-aided design (CAD) in the detail drawing, and its effect is that the every data with computer parts are input in the computing machine, allows computing machine understand part, thereby establishes the data basis for follow-up design.At present, Chang Yong geometric figure input method has following three kinds: picture method, assembly back-and-forth method, solid modelling method.
In use there is following shortcoming in above-mentioned three kinds of methods:
A, can't embody machining element: adopt existing drawing, shortcoming is to draw very slow, can't embody machining element in figure.
B, data are static: it is static adopting the data of assembly back-and-forth method input, and is not suitable for follow-up technology and creates automatically.
C, cycle are long, the training difficulty is big: adopt the solid modelling method, the cycle of finishing solid modelling is extremely long, and is very high to user's requirement, need carry out long-term training to the user.
Summary of the invention
The invention provides a kind of key element input method, problems such as the drawing information input efficiency is low, data static state that it solves.
The present invention solves above-mentioned technical matters by following technical proposals: a kind of key element input method is characterized in that it may further comprise the steps:
Step 1: extract the key element of drawing, and key element is classified and finalized the design;
Step 2: all kinds of key elements are defined, and clearly express the parameter value of key element, set up a pseudo-entity then;
Step 3: the input mode of determining key element;
Step 4: adopt specific database input data and carry out store operation;
Step 5: the cryptographic methods of dynamic data base is combined with key element sign indicating number position rule, carry out aggregation of data and handle.
Preferably, described step 1 is the key element definition and determines the parameter step that step 3 is for setting the interface step for collection key element step, step 2, and step 4 is for setting up the dynamic data base step, and step 5 is the key element step of converting.
Preferably, described pseudo-entity gives expression to the existence of all kinds of key elements.
Preferably, described step 2 is determined to begin all kinds of key elements are carried out comprehensive coding behind the clear and definite parameter value, determines key element sign indicating number position rule.
Preferably, described step 3 comprises input mode of using to the client and the input mode of using for the software engineering technology personnel.
Positive progressive effect of the present invention is: the present invention passes on geometric figure to computing machine with relevant machining information by a kind of simpler method, make computing machine understand processing request, utilize the arrangement calculation of information, be the follow-up work basis of creating into, speed is fast and easy to use.
Description of drawings
Fig. 1 is the process flow diagram of one embodiment of the invention.
Embodiment
Provide preferred embodiment of the present invention below in conjunction with accompanying drawing, to describe technical scheme of the present invention in detail.
As shown in Figure 1, key element input method of the present invention may further comprise the steps:
Step 1: this step is for collecting the key element step, specifically be to allow computing machine can discern the mechanism and the machine work content thereof of drawing by limited data input, it is effective adopting data entry device, at first to extract the key element of drawing, clearly need to extract which key element, from a large amount of drawing machining informations, from a large amount of operation cards, from existing cutter measurer anchor clamps, extract all kinds of key elements, screen, and with reference to group technology and group technology, final typing, determine to use which key element, and key element is classified and finalized the design.The standby key element that key element clearly commonly used, popular key element, key element that frequency of utilization is high in key element is collected, screening back keep several indefinite forms is provided with the new key element expansion in back and uses.
Step 2: this step is the key element definition and determines the parameter step, specifically be classification and the typing that all kinds of key elements have been arranged, after the quantity of clear and definite every class key element, in order to determine the position of key element, size, direction and characteristic, all kinds of key elements are defined, and clearly express the parameter value of key element, set up a pseudo-entity then, this pseudo-entity can give expression to the existence of all kinds of key elements, and it is outwardness not necessarily, therefore finished definition, determined to begin all kinds of key elements are carried out comprehensive coding behind the clear and definite parameter value, determine the correlation rule of key element sign indicating number position rule and all kinds of sign indicating numbers position, so far finished each relevant preliminary work, for input method is paved the way.
Step 3: this step is set the interface step, specifically is the input mode of determining key element: a kind of is the input mode of using to the client, and another kind is the input mode of using to the software engineering technology personnel.The input mode that the client uses is by the interface figure of the formula of learning to read with the aid of pictures and has the parameter input of prompting, a large amount of figure inputting interfaces of fabrication and processing key element and body key element, as long as numerical value by prompting input related content, and to will not importing with the irrelevant numerical value of processes in the part, will not import with the details of the irrelevant structure of Computer-Aided Process Planning.The input mode that the software engineering technology personnel use is to carry out with the mode at software programming and enclose pattern interface, it finishes the input of technology essential factor, technical factor, frock key element etc. and other key element, parameter value that input is subscribed and coding thereof and sign indicating number position rule, to carry out some key elements of the parameter of the key element of indefinite form and indefinite form simultaneously and carry out the spacing coding, the reserved part key element is provided with the back expansion and uses.
Step 4: this step is for setting up the dynamic data base step, adopt specific database input data and carry out store operation, general database becomes custom library, specific database is called dynamic data base, the key distinction of the two is the title difference of data field, general Database field title is clear and definite, and it is identical with title name to deposit content.And the just individual symbol of dynamic data base field title, therefore the content of depositing also is indefinite, promptly same field store data of different nature.The data-base content of depositing can be arbitrarily, the memory contents of the same field of different recording is different fully, also can be uncorrelated, because the parameter value of a key element can have only seldom several, and all the parameter name of key elements can much hundreds ofs, and only take several fields in database, and 90% field is a null field, make troubles to storing, take, calculate, analyzing, it is very slow that inquiry velocity also becomes; And with behind the dynamic data base, only with 4~6 fields, if a key element has only 2~3 parameters, one can be placed in preceding several fields of a record, and the field of back can be deposited the parameter of another key element, if will have tens parameters, can be placed in several records, deposit data can make dynamic data base buy securities with all one's capital to deposit like this, can consult for the interface, and the too many inconvenience inquiry of routine data storehouse null field.Like this, the inquiry of dynamic data base, the cognition of key element, the cognition of parameter have been solved, for cryptographic methods, data combination method, data resolving method are adopted in the cognition of finishing field data, can reach the related of the ownership of the clear and definite implication of understanding data and data and data, only in this way could take and finish inquiry, analyze and calculate relevant operations such as ordering the value of key element.
Step 5: this step is the key element step of converting, the cryptographic methods of dynamic data base is combined with key element sign indicating number position rule, carrying out aggregation of data handles, make between the data by each combination and each decomposition, carry out data conversion and computing and infiltration by correlative coding and sign indicating number position rule, reach the purpose that key element transforms at last, machining element, body key element, technology essential factor are separated, be associated with the frock key element of instrument, transform to technical factor at last, so far finish automatic one step of key of creating into technology.
The key element input method begins till transform from collection, whole tasks have been finished, what stay to the final user is simple key element inputting interface and parameter prompting inputting interface, very easy to use, inner key element input is irrelevant with the final user, this method is a kind of new method, be to allow a kind of completely new approach of computer Recognition drawing machining information, it relates to the input content, database structure, data access, the evolution of cognitive data, serial of methods categories such as the conversion of key element, it is one of gordian technique of creating automatically of computing machine shock processing, it is the rapid-action powerful measure, by the application of this method, make the key element input method more fully develop.
Though more than described the specific embodiment of the present invention, it will be understood by those of skill in the art that these only illustrate, under the prerequisite that does not deviate from principle of the present invention and essence, can make numerous variations or modification to these embodiments.Therefore, protection scope of the present invention is limited by appended claims.

Claims (5)

1. key element input method is characterized in that it may further comprise the steps:
Step 1: extract the key element of drawing, and key element is classified and finalized the design;
Step 2: all kinds of key elements are defined, and clearly express the parameter value of key element, set up a pseudo-entity then;
Step 3: the input mode of determining key element;
Step 4: adopt specific database input data and carry out store operation;
Step 5: the cryptographic methods of dynamic data base is combined with key element sign indicating number position rule, carry out aggregation of data and handle.
2. key element input method as claimed in claim 1 is characterized in that, described step 1 is for collecting the key element step, step 2 is the key element definition and determines the parameter step, step 3 is for setting the interface step, and step 4 is for setting up the dynamic data base step, and step 5 is the key element step of converting.
3. key element input method as claimed in claim 1 is characterized in that described pseudo-entity gives expression to the existence of all kinds of key elements.
4. key element input method as claimed in claim 1 is characterized in that, described step 2 is determined to begin all kinds of key elements are carried out comprehensive coding behind the clear and definite parameter value, determines key element sign indicating number position rule.
5. key element input method as claimed in claim 1 is characterized in that, described step 3 comprises input mode of using to the client and the input mode of using for the software engineering technology personnel.
CN2009102477739A 2009-12-30 2009-12-30 Key element input method Pending CN102117346A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009102477739A CN102117346A (en) 2009-12-30 2009-12-30 Key element input method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009102477739A CN102117346A (en) 2009-12-30 2009-12-30 Key element input method

Publications (1)

Publication Number Publication Date
CN102117346A true CN102117346A (en) 2011-07-06

Family

ID=44216116

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009102477739A Pending CN102117346A (en) 2009-12-30 2009-12-30 Key element input method

Country Status (1)

Country Link
CN (1) CN102117346A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116618764A (en) * 2023-07-25 2023-08-22 广东台正精密机械有限公司 Production optimization method and system of mirror surface electric discharge machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116618764A (en) * 2023-07-25 2023-08-22 广东台正精密机械有限公司 Production optimization method and system of mirror surface electric discharge machine
CN116618764B (en) * 2023-07-25 2023-09-22 广东台正精密机械有限公司 Production optimization method and system of mirror surface electric discharge machine

Similar Documents

Publication Publication Date Title
Pouchard Revisiting the data lifecycle with big data curation
WO2016054908A1 (en) Internet of things big data platform-based intelligent user profiling method and apparatus
CN108021683B (en) Three-dimensional labeling-based similar model retrieval implementation method
US20160205137A1 (en) Visualization and analysis of complex security information
CN109101519B (en) Information acquisition system and heterogeneous information fusion system
CN107609217A (en) Collide the processing method and processing device of check data
Radhakrishna et al. Optimising business intelligence results through strategic application of software process model
Lin et al. Integrated circuit board object detection and image augmentation fusion model based on YOLO
Karl et al. Advances in digital pottery analysis
CN104376120B (en) A kind of information retrieval method and system
Takahashi et al. Data and Materials and Catalysts Informatics
CN112199395A (en) Artificial intelligence analysis method and system
CN107798101A (en) The webpage data acquiring method and system of user's free point arrangement
CN102117346A (en) Key element input method
TWI785724B (en) Method for creating data warehouse, electronic device, and storage medium
Bhardwaj et al. Automating Data Analysis with Python: A Comparative Study of Popular Libraries and their Application
CN108256465A (en) Electrical energy power quality disturbance event recognition method and device
CN114356115A (en) Method for intelligently inputting form, electronic equipment and computer readable storage medium
CN110309047B (en) Test point generation method, device and system
JP6287506B2 (en) Database access control program, database access control method, and information processing apparatus
CN108062325A (en) Comparative approach and comparison system
Li et al. Research on optimization of process parameters of traditional Chinese medicine based on data mining technology
Prema A study to renovate image data using data analytics methodologies
WO2016013099A1 (en) Feature data management system and feature data management method
KR101654192B1 (en) Method and Apparatus for Analyzing Touch Data, and Touch Data Analyzing System

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C02 Deemed withdrawal of patent application after publication (patent law 2001)
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20110706